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Thermal modelling of a passively cooled inverter for wave power

机译:波浪能被动冷却逆变器的热模型

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Owing to very costly maintenance operations, the reliability of electrical systems for offshore renewable energy is a major issue to make electricity production economical. Therefore proper thermal management is essential in order to avoid the components from being damaged by excessive temperature increase. Both analytic and computational fluid dynamics (CFD) models were implemented to assess the temperature increase in the inverter installed in a submerged substation and during working conditions. It was shown that this inverter could transmit a total power of up to about 35 kW. This limit is dependent on a certain distance between the modules and a perfect thermal contact with the hull. The influence of several of such parameters as well as the efficiency of passive cooling were studied.
机译:由于非常昂贵的维护操作,用于海上可再生能源的电气系统的可靠性是使电力生产变得经济的主要问题。因此,适当的热管理对于避免组件因温度过高损坏而至关重要。分析和计算流体动力学(CFD)模型都可以用来评估安装在水下变电站中的逆变器和工作条件下的温度升高。结果表明,该逆变器可以传输高达35 kW的总功率。该限制取决于模块之间的一定距离以及与船体的完美热接触。研究了其中几个参数的影响以及被动冷却的效率。

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